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低轧制力下钢板提高折弯性能研究
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作者 白学飞 王彦龙 +5 位作者 王婧璇 金谅 许洪瑞 郑伟 宋继强 董爽 《冶金标准化与质量》 2023年第6期24-26,共3页
为试验低轧制力下低合金钢板的晶粒度和折弯性能,采用不同Nb、V、C元素含量的成分设计,从试验结果来看:采用Nb-V微合金化或降低C含量的成分设计,可以改善材料的塑性和晶粒度。尤其是降低C含量后,在低晶粒度下,折弯性能结果仍然良好。
关键词 低轧制力 合金钢板 晶粒度 成分设计 折弯
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Effect of cryorolling on microstructure and property of high strength and high conductivity Cu−0.5wt.%Cr alloy 被引量:7
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作者 Peng-chao ZHANG Jie-fu SHI +2 位作者 Ying-shui YU Jun-cai SUN Ting-ju LI 《Transactions of Nonferrous Metals Society of China》 SCIE EI CAS CSCD 2020年第9期2472-2479,共8页
Cu−0.5wt.%Cr alloy with high strength and high conductivity was processed by cryorolling(CR)and room temperature rolling(RTR),respectively.The microstructure,mechanical property and electrical conductivity of Cu−0.5Cr... Cu−0.5wt.%Cr alloy with high strength and high conductivity was processed by cryorolling(CR)and room temperature rolling(RTR),respectively.The microstructure,mechanical property and electrical conductivity of Cu−0.5Cr alloy after CR/RTR and aging treatment were investigated.The results indicate that obvious dislocation entanglement can be observed in matrix of CR alloy.The Cr particles in the alloy after CR and aging treatment possess finer particle size and exhibit dispersive distribution.The peak hardness of CR alloy is HV 167.4,significantly higher than that of RTR alloy.The optimum mechanical property of CR alloy is obtained after aging at 450℃ for 120 min.The conductivity of CR Cu−0.5Cr alloy reaches 92.5%IACS after aging at 450℃ for 120 min,which is slightly higher than that of RTR alloy. 展开更多
关键词 Cu−Cr alloy CRYOROLLING microstructure mechanical property electrical conductivity
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